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Published on: September 14, 2021
Microvascular significance of TGF-β axis activation in COVID-19
Lauren M Arguinchona1, Caterina Zagona-Prizio1, Megan E Joyce2
1School of Medicine, University of Colorado Anschutz Medical Campus, Aurora, CO, United States.
Abstract:
As 2023 approaches, the COVID-19 pandemic has killed millions. While vaccines have been a crucial intervention, only a few effective medications exist for prevention and treatment of COVID-19 in breakthrough cases or in unvaccinated or immunocompromised patients. SARS-CoV-2 displays early and unusual features of micro-thrombosis and immune dysregulation that target endothelial beds of the lungs, skin, and other organs. Notably, anticoagulation improves outcomes in some COVID-19 patients. The protein transforming growth factor-beta (TGF-β1) has constitutive roles in maintaining a healthy microvasculature through its roles in regulating inflammation, clotting, and wound healing. However, after infection (including viral infection) TGF-β1 activation may augment coagulation, cause immune dysregulation, and direct a path toward tissue fibrosis. Dysregulation of TGF-β signaling in immune cells and its localization in areas of microvascular injury are now well-described in COVID-19, and such events may contribute to the acute respiratory distress syndrome and skin micro-thrombosis outcomes frequently seen in severe COVID-19. The high concentration of TGF-β in platelets and in other cells within microvascular thrombi, its ability to activate the clotting cascade and dysregulate immune pathways, and its pro-fibrotic properties all contribute to a unique milieu in the COVID-19 microvasculature. This unique environment allows for propagation of microvascular clotting and immune dysregulation. In this review we summarize the physiological functions of TGF-β and detail the evidence for its effects on the microvasculature in COVID-19. In addition, we explore the potential role of existing TGF-β inhibitors for the prevention and treatment of COVID-19 associated microvascular thrombosis and immune dysregulation.
Insights
Transforming growth factor-beta (TGF-β1) dysregulation contributes to COVID-19 microvascular thrombosis and immune issues. TGF-β1 inhibitors may offer new treatments for severe COVID-19 complications.
Area of Science:
- Cardiovascular Science
- Immunology
- Virology
Background:
- COVID-19 causes millions of deaths, with limited treatment options for severe or breakthrough cases.
- SARS-CoV-2 infection triggers micro-thrombosis and immune dysregulation, particularly affecting the microvasculature.
- Transforming growth factor-beta (TGF-β1) plays a key role in vascular health but can exacerbate COVID-19 pathology.
Purpose of the Study:
- To review the physiological roles of TGF-β.
- To detail TGF-β's effects on the microvasculature in COVID-19.
- To explore TGF-β inhibitors as potential treatments for COVID-19 complications.
Main Methods:
- Literature review of TGF-β physiology and its role in COVID-19.
- Analysis of evidence linking TGF-β dysregulation to microvascular injury and immune responses in COVID-19.
- Exploration of existing TGF-β inhibitors for therapeutic potential.
Main Results:
- TGF-β1 activation augments coagulation, causes immune dysregulation, and promotes fibrosis post-infection.
- Dysregulated TGF-β signaling and its presence in microvascular injury sites are evident in severe COVID-19.
- High TGF-β concentrations in thrombi contribute to microvascular clotting and immune dysregulation.
Conclusions:
- TGF-β1 plays a significant role in the pathogenesis of COVID-19-associated microvascular thrombosis and immune dysregulation.
- Targeting TGF-β signaling pathways with existing inhibitors presents a promising therapeutic strategy.
- Further research into TGF-β inhibitors could lead to novel prevention and treatment options for severe COVID-19.
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